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  1. Cortical coordination dynamics and cognition.Steven L. Bressler & J. A. Scott Kelso - 2001 - Trends in Cognitive Sciences 5 (1):26-36.
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  • A field theory of consciousness.E. Roy John - 2001 - Consciousness and Cognition 10 (2):184-213.
    This article summarizes a variety of current as well as previous research in support of a new theory of consciousness. Evidence has been steadily accumulating that information about a stimulus complex is distributed to many neuronal populations dispersed throughout the brain and is represented by the departure from randomness of the temporal pattern of neural discharges within these large ensembles. Zero phase lag synchronization occurs between discharges of neurons in different brain regions and is enhanced by presentation of stimuli. This (...)
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  • FMRI reveals large-scale network activation in minimally conscious patients.Nicholas D. Schiff, D. Rodriguez-Moreno & A. Kamal - 2005 - Neurology 64:514-523.
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  • The cognitive unconscious.John F. Kihlstrom - 1987 - Science 237:1445-1452.
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  • Brain processes and phenomenal consciousness: A new and specific hypothesis.Hans Flohr - 1990 - Theory and Psychology 1:245-62.
    A hypothesis on the physiological conditions for the occurrence of phenomenal states is presented. It is suggested that the presence of phenomenal states depends on the rate at which neural assemblies are formed. Unconsciousness and various disturbances of phenomenal consciousness occur if the assembly formation rate is below a certain threshold level; if this level is surpassed, phenomenal states necessarily result. A critical production rate of neural assemblies is the necessary and sufficient condition for the occurrence of phenomenal states.
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  • The neurophysics of consciousness.E. Roy John - 2002 - Brain Research Reviews 39 (1):1-28.
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  • Toward operational architectonics of consciousness: basic evidence from patients with severe cerebral injuries.Andrew A. Fingelkurts, Alexander A. Fingelkurts, Sergio Bagnato, Cristina Boccagni & Giuseppe Galardi - 2012 - Cognitive Processing 13 (2):111-131.
    Although several studies propose that the integrity of neuronal assemblies may underlie a phenomenon referred to as awareness, none of the known studies have explicitly investigated dynamics and functional interactions among neuronal assemblies as a function of consciousness expression. In order to address this question EEG operational architectonics analysis (Fingelkurts and Fingelkurts, 2001, 2008) was conducted in patients in minimally conscious (MCS) and vegetative states (VS) to study the dynamics of neuronal assemblies and operational synchrony among them as a function (...)
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  • Frequency-amplitude characteristics of the EEG at different levels of consciousness.M. N. Rusalova - 2006 - Neuroscience and Behavioral Physiology 36 (4):351-358.
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  • Brain response to one's own name in vegetative state, minimally conscious state, and locked-in syndrome.Fabien Perrin, Caroline Schnakers, Manuel Schabus, Christian Degueldre, Serge Goldman, Serge Brédart, Marie-Elisabeth E. Faymonville, Maurice Lamy, Gustave Moonen, André Luxen, Pierre Maquet & Steven Laureys - 2006 - Archives of Neurology 63 (4):562-569.
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  • The conscious access hypothesis: Origins and recent evidence.Bernard J. Baars - 2002 - Trends in Cognitive Sciences 6 (1):47-52.
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  • Radical embodiment: Neural dynamics and consciousness.Evan Thompson & Francisco J. Varela - 2001 - Trends in Cognitive Sciences 5 (10):418-425.
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  • Characteristics of interhemisphere interactions at different levels of consciousness.M. N. Rusalova - 2005 - Neuroscience and Behavioral Physiology 35 (8):821-827.
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  • Towards a cognitive neuroscience of consciousness: Basic evidence and a workspace framework.Stanislas Dehaene & Lionel Naccache - 2001 - Cognition 79 (1):1-37.
    This introductory chapter attempts to clarify the philosophical, empirical, and theoretical bases on which a cognitive neuroscience approach to consciousness can be founded. We isolate three major empirical observations that any theory of consciousness should incorporate, namely (1) a considerable amount of processing is possible without consciousness, (2) attention is a prerequisite of consciousness, and (3) consciousness is required for some specific cognitive tasks, including those that require durable information maintenance, novel combinations of operations, or the spontaneous generation of intentional (...)
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  • Does any aspect of mind survive brain damage that typically leads to a persistent vegetative state? Ethical considerations.Jaak Panksepp, Thomas Fuchs, Victor Abella Garcia & Adam Lesiak - 2007 - Philosophy, Ethics, and Humanities in Medicine 2:32-.
    Recent neuroscientific evidence brings into question the conclusion that all aspects of consciousness are gone in patients who have descended into a persistent vegetative state (PVS). Here we summarize the evidence from human brain imaging as well as neurological damage in animals and humans suggesting that some form of consciousness can survive brain damage that commonly causes PVS. We also raise the issue that neuroscientific evidence indicates that raw emotional feelings (primary-process affects) can exist without any cognitive awareness of those (...)
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  • Toward a quantitative description of large-scale neocortical dynamic function and EEG.Paul L. Nunez - 2000 - Behavioral and Brain Sciences 23 (3):371-398.
    A general conceptual framework for large-scale neocortical dynamics based on data from many laboratories is applied to a variety of experimental designs, spatial scales, and brain states. Partly distinct, but interacting local processes (e.g., neural networks) arise from functional segregation. Global processes arise from functional integration and can facilitate (top down) synchronous activity in remote cell groups that function simultaneously at several different spatial scales. Simultaneous local processes may help drive (bottom up) macroscopic global dynamics observed with electroencephalography (EEG) or (...)
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  • Visuo-spatial consciousness and parieto-occipital areas: A high-resolution EEG study.Claudio Babiloni, Fabrizio Vecchio, Maurizio Miriello, Gian Luca Romani & Paolo Maria Rossini - 2006 - Cerebral Cortex 16 (1):37-46.
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  • Brain stimulation in the study of neuronal functions for conscious sensory experiences.Benjamin W. Libet - 1982 - Human Neurobiology 1:235-42.
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  • Making Complexity Simpler: Multivariability and Metastability in the Brain.Andrew And Alexander Fingelkurts - 2004 - International Journal of Neuroscience 114 (7):843 - 862.
    This article provides a retrospective, current and prospective overview on developments in brain research and neuroscience. Both theoretical and empirical studies are considered, with emphasis in the concept of multivariability and metastability in the brain. In this new view on the human brain, the potential multivariability of the neuronal networks appears to be far from continuous in time, but confined by the dynamics of short-term local and global metastable brain states. The article closes by suggesting some of the implications of (...)
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  • Auditory processing in severely brain injured patients: Differences between the minimally conscious state and the persistent vegetative state.Melanie Boly, Marie-Elisabeth E. Faymonville & Philippe Peigneux - 2004 - Archives of Neurology 61 (2):233-238.
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  • The minimally conscious state: Definition and diagnostic criteria.Joseph T. Giacino & Childs N. Ashwal S. - 2002 - Neurology 58 (3):349-353.
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  • Timing in cognition and EEG brain dynamics: Discreteness versus continuity.Andrew A. Fingelkurts & Alexander A. Fingelkurts - 2006 - Cognitive Processing 7 (3):135-162.
    This article provides an overview of recent developments in solving the timing problem (discreteness vs. continuity) in cognitive neuroscience. Both theoretical and empirical studies have been considered, with an emphasis on the framework of Operational Architectonics (OA) of brain functioning (Fingelkurts and Fingelkurts, 2001, 2005). This framework explores the temporal structure of information flow and interarea interactions within the network of functional neuronal populations by examining topographic sharp transition processes in the scalp EEG, on the millisecond scale. We conclude, based (...)
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  • A continuum of self-consciousness that emerges in phylogeny and ontogeny.Marcel Kinsbourne - 2005 - In Herbert S. Terrace & Janet Metcalfe (eds.), The Missing Link in Cognition: Origins of Self-Reflective Consciousness. New York: Oxford University Press. pp. 142-156.
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  • Unconscious semantic priming extends to novel unseen stimuli.Lionel Naccache & Stanislas Dehaene - 2001 - Cognition 80 (3):215-229.
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  • Natural World Physical, Brain Operational, and Mind Phenomenal Space-Time.Andrew A. Fingelkurts, Alexander A. Fingelkurts & Carlos F. H. Neves - 2010 - Physics of Life Reviews 7 (2):195-249.
    Concepts of space and time are widely developed in physics. However, there is a considerable lack of biologically plausible theoretical frameworks that can demonstrate how space and time dimensions are implemented in the activity of the most complex life-system – the brain with a mind. Brain activity is organized both temporally and spatially, thus representing space-time in the brain. Critical analysis of recent research on the space-time organization of the brain’s activity pointed to the existence of so-called operational space-time in (...)
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  • Brain, conscious experience, and the observing self.Bernard J. Baars, Thomas Zoega Ramsoy & Steven Laureys - 2003 - Trends in Neurosciences 26 (12):671-5.
    Conscious perception, like the sight of a coffee cup, seems to involve the brain identifying a stimulus. But conscious input activates more brain regions than are needed to identify coffee cups and faces. It spreads beyond sensory cortex to frontoparietal association areas, which do not serve stimulus identification as such. What is the role of those regions? Parietal cortex support the ‘first person perspective’ on the visual world, unconsciously framing the visual object stream. Some prefrontal areas select and interpret conscious (...)
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  • Establishing consciousness in non-communicative patients: A modern-day version of the Turing test.John F. Stins - 2009 - Consciousness and Cognition 18 (1):187-192.
    In a recent study of a patient in a persistent vegetative state, [Owen, A. M., Coleman, M. R., Boly, M., Davis, M. H., Laureys, S., & Pickard, J. D. . Detecting awareness in the vegetative state. Science, 313, 1402] claimed that they had demonstrated the presence of consciousness in this patient. This bold conclusion was based on the isomorphy between brain activity in this patient and a set of conscious control subjects, obtained in various imagery tasks. However, establishing consciousness in (...)
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  • Consciousness and cognition may be mediated by multiple independent coherent ensembles.E. Roy John, Paul Easton & Robert Isenhart - 1997 - Consciousness and Cognition 6 (1):3-39.
    Short-term or working memory provides temporary storage of information in the brain after an experience and is associated with conscious awareness. Neurons sensitive to the multiple stimulus attributes comprising an experience are distributed within many brain regions. Such distributed cell assemblies, activated by an event, are the most plausible system to represent the WM of that event. Studies with a variety of imaging technologies have implicated widespread brain regions in the mediation of WM for different categories of information. Each kind (...)
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  • Detecting awareness in the conscious state.Adrian M. Owen, Martin R. Coleman, Melanie Boly, Matthew H. Davis, Steven Laureys, Dietsje Jolles & John D. Pickard - 2006 - Science 313:1402.
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  • The neural correlate of (un)awareness: Lessons from the vegetative state.Steven Laureys - 2005 - Trends in Cognitive Sciences 9 (12):556-559.
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  • Can functional brain imaging discover consciousness in the brain?Antti Revonsuo - 2001 - Journal of Consciousness Studies 8 (3):3-23.
    If we assume that consciousness is a natural biological phenomenon in the brain, should we expect the current brain sensing and imaging methods to somehow ‘discover’ consciousness? The answer depends on the following points: What kind of level of biological organization do we assume consciousness to be? What would count as the discovery of this level? What are the levels of organization from which the currently available research instruments pick signals and acquire data? Single-cell recordings, PET, fMRI, EEG and MEG (...)
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  • Theta synchronization during episodic retrieval: Neural correlates of conscious awareness.W. Klimesch, M. Doppelmayr, Andrew P. Yonelinas, N. E. A. Kroll, M. Lazzara, D. Röhm & W. Gruber - 2001 - Cognitive Brain Research 12 (1):33-38.
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  • The phenomenological underpinning of the notion of a minimal core self: A psychological perspective.Nini Praetorius - 2009 - Consciousness and Cognition 18 (1):325-338.
    The paper argues that Zahavi’s defence of the self as an experiential dimension, i.e. “identified with the first-person givenness of experiential phenomena”, and of the notion of a pre-reflective minimal core self relies on an unwarranted assumption. It is assumed that awareness of the phenomenal mode of experiences of objects, i.e. what the object “feels” like for the experiencer, is comparable with, indeed entails, first-person givenness of experience. In consequence both the arguments concerning the foundational role of the pre-reflective minimal (...)
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  • Neural mechanisms of unconscious cognitive processing.Charles D. Yingling - 2001 - Clinical Neurophysiology 112 (1):157-158.
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  • Event-related potential measures of consciousness: Two equations with three unknown.Boris Kotchoubey - 2005 - In Steven Laureys (ed.), The Boundaries of Consciousness: Neurobiology and Neuropathology. Elsevier.
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